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A rate-dependent cohesive crack model based on anisotropic damage coupled to plasticity

机译:基于各向异性损伤和塑性的速率相关粘性裂纹模型

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摘要

In quasi-brittle material the complex process of decohesion between particles in microcracks and localization of the displacement field into macrocracks is limited to a narrow fracture zone, and it is often modelled with cohesive crack models. Since the anisotropic nature of the decohesion process in separation and sliding is essential, it is particularly focused in this paper. Moreover, for cyclic and dynamic loading the unloading, load reversal (including crack closure) and rate dependency are essential features that are included in a new model. The modelling of degradation is based on a 'localized' version of anisotropic continuum damage coupled to inelasticity. The concept of strain energy equivalence between the states in the effective and nominal settings is adopted in order to define the free energy of the interface. The proposed fracture criterion is of the Mohr type, with a smooth transition of the failure and kinematics (slip and dilatation) characteristics between tension and shear. The chosen potential, of the Lemaitre-type, for evolution of the dissipative processes is additively decomposed into plastic and damage parts, and non-associative constitutive equations are obtained. The constitutive equations are integrated by applying the backward Euler rule and by using Newton iteration. The proposed model is assessed analytically and numerically and a typical calibration procedure for concrete is proposed.
机译:在准脆性材料中,微裂纹中的颗粒之间的脱粘和位移场在大裂纹中的局限性的复杂过程仅限于狭窄的断裂区域,并且通常用内聚裂纹模型进行建模。由于脱粘过程在分离和滑动中的各向异性是必不可少的,因此在本文中将特别关注。此外,对于循环和动态加载,新模型中包括卸载,反向加载(包括裂纹闭合)和速率相关性是必不可少的功能。退化的建模基于各向异性连续体损伤与非弹性耦合的“局部”版本。为了定义界面的自由能,采用了有效和标称设置下状态之间的应变能当量的概念。提出的断裂准则是Mohr类型的,断裂和张力和剪切之间的运动学特征(滑移和膨胀)平滑过渡。将选定的Lemaitre型势能用于耗散过程的演化,然后将其分解为塑性和破坏零件,并获得非缔合本构方程。本构方程通过应用反向欧拉规则并通过使用牛顿迭代进行积分。对所提出的模型进行了分析和数值评估,并提出了混凝土的典型校准程序。

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